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This reaction was also found to work for acrylonitrile.
Production trends for acetonitrile thus generally follow those of acrylonitrile.
This conversion is practiced on a large scale for acrylonitrile:
Aminopropionitrile is be prepared by the reaction of ammonia with acrylonitrile.
Addition of acrylonitrile, followed by another reduction, yields N-alkyl-1,3-propanediamines.
An important application of this process is the production of acrylonitrile:
Acetonitrile is a by-product from the manufacture of acrylonitrile.
The main industrial route to this nitrile is the hydrogenation of acrylonitrile.
One example describes the preparation of phosphonamidates in the presence of acrylonitrile.
Cyanamid also was a major producer of acrylonitrile, and its derivative, acrylamide.
The proportions can vary from 15 to 35% acrylonitrile, 5 to 30% butadiene and 40 to 60% styrene.
There are two main excretion processes of acrylonitrile.
Gloves made with different types of rubber (acrylonitrile is one alternative), and without talc, are now used in many circumstances.
The chemical, acrylonitrile, is found in a material used to make coffee cups, pen barrels and airline trays.
Because acetonitrile is a byproduct in the production of acrylonitrile, its production has also decreased.
Succinonitrile is produced by the addition of hydrogen cyanide to acrylonitrile:
In fact, the 2008-2009 acetonitrile shortage was caused by a decrease in demand for acrylonitrile.
The researchers found that acrylonitrile was more susceptible to be compatible with the electrolyte due to the wettability property.
The surface of the polyethylene membrane was modified with acrylonitrile via plasma coating technique.
Acrylic fiber is a synthetic polymer fiber that contains at least 85% acrylonitrile.
Certain plastics, especially those derived from acrylonitrile, release hydrogen cyanide when heated or burnt.
The other major industrial route involves electrosynthesis, starting from acrylonitrile, which is dimerized:
Most industrial acrylonitrile is produced by catalytic ammoxidation of propene, also known as the Sohio process.
Their smoke emits eight chemicals that the state says are known to cause cancer, among them benzene, vinyl chloride and acrylonitrile.
Racemic proline can be synthesized from diethyl malonate and acrylonitrile: